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Significantly Improved Electrical Properties of Photo-Initiated Auxiliary Crosslinking EPDM Used for Cable Termination

机译:用于电缆端接的光引发辅助交联三元乙丙橡胶的电性能显着改善

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摘要

In order to achieve high quality electrical materials for cable terminations, the crosslinked ethylene-propylene-diene monomer (EPDM) materials, with adequate breakdown strength, appropriately increased conductivity and are developed by employing auxiliary crosslinker and ultraviolet (UV) photoinitiated crosslinking technique. The characteristic cyclic anhydrides with coupled carbonyl groups are utilized as auxiliary crosslinkers to promote crosslinking efficiency and provide polar-groups to EPDM molecules in UV-initiated crosslinking processes, which can be effectively fulfilled in industrial cable production. The results of infrared spectroscopy show that the auxiliary crosslinkers have been successfully grated to EPDM molecules through UV initiation process. The conductivity of EPDM increases after individually utilizing three auxiliary crosslinkers to EPDM at various temperatures of cable operations, by which the highest conductivity has been acquired by grafting . -m-phenylene dimaleimide. The first-principles calculations demonstrate that some occupied local electronic-states have been introduced in the band-gap of the EPDM crosslinked by . -m-phenylene dimaleimide (EPDM-HAV2), which can be thermally excited from valence band to conduction band at lower temperature or in higher density, leading to augmentation in electrical conductivity. Meanwhile, the breakdown strength achieves a significant improvement in consistency with the theoretical estimation that deeper hole-traps can be introduced by auxiliary-crosslinking modification, and will consequently increase breakdown strength through the trapping mechanism of space charge suppression. in relation to the appropriately increased conductivity, in combination with persistent breakdown strength, the finite element simulations of the electric field distribution in EPDM cable terminations suggest that the effectively homogenized electric field at the root of stress cone will be realized for EPDM-HAV2. The present study offers a fundamental strategy to ameliorate EPDM materials in the application of insulated cable accessories.
机译:为了获得用于电缆终端的高质量电气材料,通过使用辅助交联剂和紫外线(UV)光引发的交联技术开发了交联的乙烯-丙烯-二烯单体(EPDM)材料,该材料具有足够的击穿强度,适当提高的导电性。具有偶联羰基的特征性环状酸酐被用作辅助交联剂,以提高交联效率,并在紫外线引发的交联过程中为EPDM分子提供极性基团,可在工业电缆生产中有效实现。红外光谱的结果表明,辅助交联剂已通过紫外线引发过程成功地磨碎为EPDM分子。在电缆操作的各种温度下分别使用三个辅助交联剂与EPDM在一起后,EPDM的电导率增加,通过接枝获得了最高的电导率。 -间亚苯基二马来酰亚胺。第一性原理计算表明,在交联的EPDM的带隙中已经引入了一些占据的局部电子态。 -间亚苯基二马来酰亚胺(EPDM-HAV2),可以在较低温度或较高密度下从价带至导带热激发,从而提高电导率。同时,击穿强度与通过辅助交联改性可以引入更深的空穴陷阱的理论估计相符,实现了显着的提高,并且因此将通过抑制空间电荷的俘获机制而增加击穿强度。关于适当增加的电导率,再加上持久的击穿强度,EPDM电缆终端中电场分布的有限元模拟表明,对于EPDM-HAV2,将在应力锥根部实现有效的均匀电场。本研究提供了一种在绝缘电缆附件的应用中改善EPDM材料的基本策略。

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